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首页> 外文期刊>Chemical Engineering Science >A distributed dynamic model for chronoamperometry, chronopotentiometry and gas starvation studies in PEM fuel cell cathode
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A distributed dynamic model for chronoamperometry, chronopotentiometry and gas starvation studies in PEM fuel cell cathode

机译:用于PEM燃料电池阴极计时电流法,计时电位法和气体饥饿研究的分布式动力学模型

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Electrochemical systems differ significantly from conventional chemical systems. The response of voltage to changes in current and that of current to changes in voltage is much faster compared to typical transients observed in transport variables. In this work, the transient characteristics of various transport and electrochemical phenomena are studied in the PEM fuel cell cathode using a dynamic model. Model-based chronoamperometry and chronopotentiometry studies are performed to investigate the interactions among the various phenomena and the limiting mechanisms under various operating modes. The dynamic response of current to changes in voltage under chronoamperometry and that of voltage to changes in current under chronopotentiometry are found to be significantly different. Moreover, it is also observed through simulations that the dynamics in the output variables are strongly influenced by the operating cell voltage. Results from chronoamperometry studies are used to highlight the problem of oxygen starvation, which is also reflected by the magnitude of oxygen excess ratio or stoichiometric ratio. Results from step tests in chronopotentiometry studies are used to study nonlinearities in the response of voltage to changes in inputs such as, current and air flow rate. (c) 2006 Published by Elsevier Ltd.
机译:电化学系统与常规化学系统明显不同。与在传输变量中观察到的典型瞬变相比,电压对电流变化的响应和电流对电压变化的响应要快得多。在这项工作中,使用动力学模型在PEM燃料电池阴极中研究了各种传输和电化学现象的瞬态特性。进行了基于模型的计时电流法和计时电位法研究,以研究各种操作模式下各种现象与限制机制之间的相互作用。发现在计时电流法下电流对电压变化的动态响应与在计时电位法下电流对电压变化的动态响应明显不同。此外,还通过仿真观察到,输出变量的动态性受到工作单元电压的强烈影响。计时电流分析法的研究结果被用来强调缺氧问题,这也可以通过氧过量比或化学计量比的大小来反映。计时电位法研究中阶跃测试的结果用于研究电压对输入变化(例如电流和空气流速)的响应的非线性。 (c)2006年由Elsevier Ltd.发布。

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